Fuel voltaic battery
A volt battery and fuel technology, applied in fuel cells, circuits, electrical components, etc., can solve the problems that solar cells cannot play the role of power generation and power supply, and the performance of solar cells is greatly affected, and achieves low cost, high energy efficiency, and a wide range of sources. Effect
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Embodiment 1
[0021] like figure 1 As shown, the fuel-generated voltaic cell of this embodiment includes adjacently arranged ionic conductors 1 and electronic conductors 2, and there is a fuel channel 3 between the ionic conductors 1 and the electronic conductors 2 for battery fuel to pass through, and also includes A positive electrode 4 and a negative electrode 5 connected to the ion conductor 1 and the electronic conductor 2 respectively, the positive electrode 4 is arranged on the side of the ion conductor 1 away from the fuel channel 3, and the negative electrode 5 is arranged on the side of the electronic conductor 2 away from the fuel channel 3 On one side, the positive electrode 4 and the negative electrode 5 are connected through an external circuit. The present invention uses the chemical reaction of the battery fuel under the action of the ion conductor 1 and the electronic conductor 2 to generate a potential difference, thereby realizing the conversion of the battery fuel Chemic...
Embodiment 2
[0028] like figure 2 As shown, the ion conductor in this embodiment is a p-type semiconductor 8, the electronic conductor is an n-type semiconductor 9, and the distance between the p-type semiconductor 8 and the n-type semiconductor 9 is 1-200 μm, so The battery fuel is methanol, ethanol or hydrogen, on the basis of the traditional pn junction, the injected battery fuel occurs between the p-type semiconductor 8 (low electron energy region) and the n-type semiconductor 9 (high electron energy region) The chemical reaction releases positive ions and electrons, converting the chemical energy of the battery fuel into electrical energy.
[0029] The working principle of the fuel-generated voltaic cell of this embodiment is as follows:
[0030] Liquid methanol is injected between two p-type semiconductors 8 and n-type semiconductor 9 (spacing 1-200 μm), methanol is ionized, and the following chemical reactions occur:
[0031] CH 3 OH+H 2 O→6H + +CO 2 +6e -
[0032] Among th...
Embodiment 3
[0034] Example 3, Gallium Nitride Light-Emitting Diode Power Generation Test
[0035] Methanol was dropped on the pn-junction of a GaN LED (gallium nitride light-emitting diode), and the measured voltage and current test data were shown in Table 1 under the condition of no light, and the current-voltage test curve was drawn as image 3 As shown, from the above data, the fuel voltaic effect can be clearly detected, and the chemical energy of methanol is converted into electrical energy.
[0036] Table 1 Voltage and current test data
[0037] Open circuit voltage (V)
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